Fundamentals of Structural Analysis Solution Manual 5th edition – Ebook PDF Instant Download/Delivery
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- Author: Kenneth M. Leet
Fundamentals of Structural Analysis introduces to engineering and architecture students a range of techniques for analyzing structures, from classical methods to matrix analysis upon which modern computer analysis is based. After an introduction to design loads, a thoughtful review of prerequisite skills in statics for analyzing statically determinate structures is presented. Methods for computing deflections then pave the way for classical methods of analyzing indeterminate structures–the flexibility, slope-deflection, and moment distribution methods. Approximate analysis techniques useful for practical design are then presented. For application to bridge-type structures with moving loads, the concept of influence lines is also covered. Finally, the stiffness method is introduced and extended upon in the direct stiffness method using matrix analysis. Throughout, carefully drawn figures, helpful insights, and practical examples and problems are presented to make this text a useful guide for students (and practitioners) to learn the essential skills for analyzing structures.
Table contents:
Chapter 1 Introduction
Chapter 2 Design Loads and Structural Framing
Chapter 3 Statics of Structures—Reactions
Chapter 4 Trusses
Chapter 5 Beams and Frames
Chapter 6 Cables and Arches
Chapter 7 Deflections of Beams and Frames
Chapter 8 Work-Energy Methods for Computing Deflections
Chapter 9 Analysis of Indeterminate Structures by the Flexibility Method
Chapter 10 Analysis of Indeterminate Beams and Frames by the Slope-Deflection Method
Chapter 11 Analysis of Indeterminate Beams and Frames by the Moment Distribution Method
Chapter 12 Influence Lines for Moving Loads
Chapter 13 Approximate Analysis of Indeterminate Structures
Chapter 14 Introduction to the General Stiffness Method
Chapter 15 Matrix Analysis of Trusses by the Direct Stiffness Method
Chapter 16 Matrix Analysis of Beams and Frames by the Direct Stiffness Method
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